Deva Arun Kumar, K.; Valanarasu, S.; Capelle, A.; Nar, S.; Karim, W.; Stolz, A.; Aspe, B.; Semmar, N.
Nanostructured Oxide (SnO2, FTO) Thin Films for Energy Harvesting: A Significant Increase in Thermoelectric Power at Low Temperature. Micromachines 2024, 15, 188.
https://doi.org/10.3390/mi15020188
AMA Style
Deva Arun Kumar K, Valanarasu S, Capelle A, Nar S, Karim W, Stolz A, Aspe B, Semmar N.
Nanostructured Oxide (SnO2, FTO) Thin Films for Energy Harvesting: A Significant Increase in Thermoelectric Power at Low Temperature. Micromachines. 2024; 15(2):188.
https://doi.org/10.3390/mi15020188
Chicago/Turabian Style
Deva Arun Kumar, Karuppiah, S. Valanarasu, Alex Capelle, Sibel Nar, Wael Karim, Arnaud Stolz, Barthélemy Aspe, and Nadjib Semmar.
2024. "Nanostructured Oxide (SnO2, FTO) Thin Films for Energy Harvesting: A Significant Increase in Thermoelectric Power at Low Temperature" Micromachines 15, no. 2: 188.
https://doi.org/10.3390/mi15020188
APA Style
Deva Arun Kumar, K., Valanarasu, S., Capelle, A., Nar, S., Karim, W., Stolz, A., Aspe, B., & Semmar, N.
(2024). Nanostructured Oxide (SnO2, FTO) Thin Films for Energy Harvesting: A Significant Increase in Thermoelectric Power at Low Temperature. Micromachines, 15(2), 188.
https://doi.org/10.3390/mi15020188